IRS2004(S)PbF HALF-BRIDGE DRIVER. Features. Product Summary. Packages
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- Abraham Williamson
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1 Features Floating channel designed for bootstrap operation Fully operational to + V Tolerant to negative transient voltage, dv/dt immune Gate drive supply range from V to V Undervoltage lockout. V, V, and V input logic compatible Cross-conduction prevention logic Internally set deadtime High-side output in phase with input Shutdown input turns off both channels Matched propagation delay for both channels RoHS compliant Description The IRS is a high voltage, high speed power MOSFET and IGBT driver with dependent high- and lowside referenced output channels. Proprietary HVIC and latch immune CMOS technologies enable ruggedized monolithic construction. The logic input is compatible with standard CMOS or LSTTL output, down to. V Typical Connection Product Summary V OFFSET I O +/- V OUT t on/off (typ.) Deadtime (typ.) Packages Data Sheet No.PD7 HALF-BRIDGE DRIVER 8 Lead SOIC IRSS IRS(S)PbF V max. ma/7 ma V - V 8 ns/ ns ns logic. The output drivers feature a high pulse current buffer stage designed for minimum driver crossconduction. The floating channel can be used to drive an N-channel power MOSFET or IGBT in the high-side configuration which operates from V to V. 8 Lead PDIP IRS (Refer to Lead Assignment for correct pin configuration). This diagram shows electrical connections only. Please refer to our Application Notes and DesignTips for proper circuit board layout.
2 IRS(S) PbF Absolute Maximum Ratings Absolute maximum ratings indicate sustained limits beyond which damage to the device may occur. All voltage parameters are absolute voltages referenced to COM. The thermal resistance and power dissipation ratings are measured under board mounted and still air conditions. Symbol Definition Units V B High-side floating absolute voltage -. V S High-side floating supply offset voltage V B - V B +. V HO High-side floating output voltage V S -. V B +. V CC Low-side and logic fixed supply voltage -. V LO Low-side output voltage -. V CC +. V IN Logic input voltage (IN & ) -. V CC +. dv s /dt Allowable offset supply voltage transient V/ns P D Package power T A + C Rth JA Thermal resistance, junction to ambient (8 lead PDIP). (8 lead SOIC). (8 lead PDIP) (8 lead SOIC) T J Junction temperature T S Storage temperature - T L Lead temperature (soldering, seconds) V W C/W C Recommended Operating Conditions The input/output logic timing diagram is shown in Fig.. For proper operation the device should be used within the recommended conditions. The V S offset rating is tested with all supplies biased at a V differential. Symbol Definition Units V B High-side floating supply absolute voltage V S + V S + V S High-side floating supply offset voltage Note V HO High-side floating output voltage V S V B V CC Low-side and logic fixed supply voltage V V LO Low-side output voltage V CC V IN Logic input voltage (IN & ) V CC T A Ambient temperature - C Note : Logic operational for V S of - V to + V. Logic state held for V S of - V to -V BS. (Please refer to the Design Tip DT97- for more details).
3 IRS(S) PbF Dynamic Electrical Characteristics V BIAS (V CC, V BS ) = V, C L = pf and T A = C unless otherwise specified. Symbol Definition Units Test Conditions ton Turn-on propagation delay 8 8 V S = V toff Turn-off propagation delay V S = V tsd Shutdown propagation delay tr Turn-on rise time 7 7 tf Turn-off fall time 9 DT Deadtime, LS turn-off to HS turn-on & HS turn-on to LS turn-off MT Delay matching, HS & LS turn-on/off ns Static Electrical Characteristics V BIAS (V CC, V BS ) = V and T A = C unless otherwise specified. The V IN, V TH, and I IN parameters are referenced to COM. The V O and I O parameters are referenced to COM and are applicable to the respective output leads: HO or LO. Symbol Definition Units Test Conditions V IH Logic (HO) & Logic (LO) input voltage. V IL Logic (HO) & Logic (LO) input voltage.8 V SD,TH+ SD input positive going threshold. V SD,TH- SD input negative going threshold.8 V OH High level output voltage, V BIAS - V O.. V OL Low level output voltage, V O.. I LK Offset supply leakage current V B = V S = V I QBS Quiescent V BS supply current I QCC Quiescent V CC supply current 7 I IN+ Logic input bias current V IN = V I IN- Logic input bias current V IN = V V CCUV+ V CCUV- V CC supply undervoltage positive going threshold V CC supply undervoltage negative going threshold I O+ Output high short circuit pulsed current 9 I O- Output low short circuit pulsed current 7 V µa V ma V CC = V to V I O = ma V IN = V or V V O = V PW µs V O = V PW µs
4 IRS(S) PbF Functional Block Diagram VB HV LEVEL SHIFT PULSE FILTER R S Q HO IN PULSE GEN VS DEAD TIME & SHOOT-THROUGH PREVENTION UV DETECT VCC SD LO COM Lead Definitions Symbol IN V B HO V S V CC LO COM Description Logic input for high-side and low-side gate driver outputs (HO and LO), in phase with HO Logic input for shutdown High-side floating supply High-side gate drive output High-side floating supply return Low-side and logic fixed supply Low-side gate drive output Low-side return Lead Assignments V CC V B 8 V CC V B 8 IN HO 7 IN HO 7 SD V S SD V S COM LO COM LO 8 Lead PDIP 8 Lead SOIC IRSPbF IRSSPbF
5 IRS(S) PbF Figure. Input/Output Timing Diagram Figure. Switching Time Waveform Definitions Figure. Shutdown Waveform Definitions Figure. Deadtime Waveform Definitions Figure. Delay Matching Waveform Definitions
6 IRS(S) PbF Turn-On Delay Time (ns) 8 Typ Figure A. Turn-On Time Turn-On Delay Time (ns) 8 8 Figure B. Turn-On Time vs. Supply Voltage Turn-On Delay Time (ns) Input Voltage (V) Turn-Off Delay Time (ns) Figure C. Turn-On Time vs. Input Voltage Figure 7A. Turn-Off Time Turn-Off Delay Time (ns) 8 Turn-Off Delay Time (ns) 8 Typ 8 8 Input Voltage (V) Figure 7B. Turn-Off Time vs. Supply Voltage Figure 7C. Turn-Off Time vs. Input Voltage
7 IRS(S) PbF Shutdown Delay Time (ns) Shutdown Delay Time (ns) 8 Figure 8A. Shutdown Time Figure 8B. Shutdown Time vs. Voltage Turn-On Rise Time (ns) MAX Figure 9A. Turn-On Rise Time Turn-On Rise Time (ns) ( 8 VBIAS Supply Voltage (V) Figure 9B. Turn-On Rise Time vs. Voltage Turn-Off Fall Time (ns) Figure A. Turn-Off Fall Time Turn-Off Fall Time (ns) 8 Input Voltage (V) Figure B. Turn-Off Fall Time vs. Input Voltage 7
8 IRS(S) PbF Deadtime (ns) 8 Deadtime (ns) 8 M ax Figure A. Deadtime Figure B. Deadtime vs. Voltage Input Voltage (V) Input Voltage (V) Temperature ( o C) Min FigureA. Logic "" Input Voltage Figure B. Logic "" Input Voltage vs. Supply Voltage.. Input Voltage (V)...8 Input Voltage (V) Figure A. Logic "" (HO) & Logic (LO) & Active SD Input Voltage 8 Vcc Supply Voltage (V) Figure B. Logic "" (HO) & Logic (LO) & Active SD Input Voltage vs. Supply Voltage 8
9 IRS(S) PbF High Level Output Voltage (V) Temperature ( o C) Figure A. High Level Output Voltage High Level Output Voltage (V) Figure B. High Level Output Voltage vs. Supply Voltage Low Level Output Voltage (V) Temperature ( o C) Figure A. Low Level Output Voltage Low Level Output Voltage (V) V BIAS Supply Voltage (V) Figure B. Low Level Output Voltage vs. Supply Voltage Offset Supply Leakage Current (µa) Offset Supply Leakage Current (µa) V B Boost Voltage (V) Figure A. Offset Supply Current Figure B. Offset Supply Current vs. Voltage 9
10 IRS(S) PbF V BS Supply Current (µa) V BS Supply Current (µa) 9 8 V BS Floating Supply Voltage (V) Figure 7A. V BS Supply Current Figure 7B. V BS Supply Current vs. Voltage 7 7 V cc Supply Current (µa) V cc Supply Current (µa) 8 V cc Supply Voltage (V) Figure 8A. Vcc Supply Current Figure 8B. Vcc Supply Current vs. Voltage Logic Input Current (µa) Logic Input Current (µa) 8 V cc Supply Voltage (V) Figure 9A. Logic"" Input Current Figure 9B. Logic"" Input Current vs. Voltage
11 IRS(S) PbF Logic Input Bias Current (µa) Logic "" Input Bias Current (µa) Max Figure A. Logic "" Input Bias Current Logic "" Input Bias Current (µa) Max 8 Supply Voltage (V) Figure B. Logic "" Input Bias Current vs. Voltage Vcc UVLO Threshold +(V) Figure A. Vcc Undervoltage Threshold(+) Vcc UVLO Threshold - (V) Figure B. Vcc Undervoltage Threshold(-) Output Source Current (ma) Figure A. Output Source Current Output Source Current (ma) 8 VBIAS Supply Voltage (V) Figure B. Output Source Current vs. Voltage
12 IRS(S) PbF Output Sink Current (ma) 8 Output Sink Current (ma) Figure A. Output Sink Current Figure B. Output Sink Current vs. Supply Voltage SD Input Threshold (+) (V) SD Input Threshold (+) (V) Vcc Supply Voltage (V) Figure A. SD Input Positive Going Threshold (+) Figure B. SD Input Positive Going Threshold (+) vs. Supply Voltage
13 IRS(S) PbF Case Outline A E X D 8 7 e B H. [.] A. [.] X.7 [.] FOOTPRINT 8X.7 [.8] 8X.78 [.7] DIM INC HES MILLIMETERS MIN MAX MIN MAX A A b c D E e. BASIC.7 BASIC e. BASIC. BASIC H K L y e A C y K x 8X b A. [.] C A B. [.] 8X L 7 8X c NOTES:. DIMENSIONING & TOLERANCING PER ASME Y.M-99.. CONTROLLING DIMENSION: MILLIMETER. DIMENSIONS ARE SHOWN IN MILLIMETERS [INCHES].. OUTLINE CONFORMS TO JEDEC OUTLINE MS-AA. 8 Lead SOIC DIMENSION DOES NOT INCLUDE MOLD PROTRUSIONS. MOLD PROTRUSIONS NOT TO EXCEED. [.]. DIMENSION DOES NOT INCLUDE MOLD PROTRUSIONS. MOLD PROTRUSIONS NOT TO EXCEED. [.]. 7 DIMENSION IS THE LENGTH OF LEAD FOR SOLDERING TO A SUBSTRATE (MS-AA) 8 Lead PDIP - - (MS-AB)
14 IRS(S) PbF Tape & Reel 8-lead SOIC LOADED TAPE FEED DIRECTION B A H D F C N OTE : CONTROLLING D IMENSION IN MM E G CARRIER TAPE DIMENSION FOR 8SOICN M etr ic Im p erial Code Min Max Min Max A B.9... C D E F G. n/a.9 n/a H F D E C B A G H REEL DIMENSIONS FOR 8SOICN M etr ic Im p erial Code Min Max Min Max A B C D E F n/a 8. n/a.7 G H
15 IRS(S) PbF LEADFREE PART MARKING INFORMATION Part number Date code IRSxxxxx YWW? IR logo Pin Identifier? MARKING CODE P Lead Free Released Non-Lead Free Released?XXXX Lot Code (Prod mode - digit SPN code) Assembly site code Per SCOP - ORDER INFORMATION 8-Lead PDIP IRSPbF 8-Lead SOIC IRSSPbF 8-Lead SOIC Tape & Reel IRSSTRPbF The SOIC-8 is MSL qualified. This product has been designed and qualified for the industrial level. Qualification standards can be found at IR WORLD HEADQUARTERS: Kansas St., El Segundo, California 9 Tel: () -7 Data and specifications subject to change without notice. /7/
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AUIRLR2905 AUIRLU2905
Features dvanced Planar Technology Logic Level Gate Drive Low On-Resistance Dynamic dv/dt Rating 175 C Operating Temperature Fast Switching Fully valanche Rated Repetitive valanche llowed up to Tjmax Lead-Free,
74LS193 Synchronous 4-Bit Binary Counter with Dual Clock
74LS193 Synchronous 4-Bit Binary Counter with Dual Clock General Description The DM74LS193 circuit is a synchronous up/down 4-bit binary counter. Synchronous operation is provided by having all flip-flops
2.5 A Output Current IGBT and MOSFET Driver
VO. A Output Current IGBT and MOSFET Driver 9 DESCRIPTION NC A C NC _ The VO consists of a LED optically coupled to an integrated circuit with a power output stage. This optocoupler is ideally suited for
Power MOSFET FEATURES. IRFZ44PbF SiHFZ44-E3 IRFZ44 SiHFZ44 T C = 25 C
Power MOSFET PRODUCT SUMMARY (V) 60 R DS(on) (Ω) V GS = 10 V 0.028 Q g (Max.) (nc) 67 Q gs (nc) 18 Q gd (nc) 25 Configuration Single FEATURES Dynamic dv/dt Rating 175 C Operating Temperature Fast Switching
CD4043BC CD4044BC Quad 3-STATE NOR R/S Latches Quad 3-STATE NAND R/S Latches
CD4043BC CD4044BC Quad 3-STATE NOR R/S Latches Quad 3-STATE NAND R/S Latches General Description The CD4043BC are quad cross-couple 3-STATE CMOS NOR latches, and the CD4044BC are quad cross-couple 3- STATE
HCF4010B HEX BUFFER/CONVERTER (NON INVERTING)
HEX BUFFER/CONVERTER (NON INVERTING) PROPAGATION DELAY TIME: t PD = 50ns (Typ.) at V DD = 10V C L = 50pF HIGH TO LOW LEVEL LOGIC CONVERSION MULTIPLEXER: 1 TO 6 OR 6 TO 1 HIGH "SINK" AND "SOURCE" CURRENT
Power MOSFET FEATURES. IRL540PbF SiHL540-E3 IRL540 SiHL540
Power MOSFET PRODUCT SUMMARY (V) 100 R DS(on) (Ω) = 5.0 V 0.077 Q g (Max.) (nc) 64 Q gs (nc) 9.4 Q gd (nc) 27 Configuration Single TO220AB G DS ORDERING INFORMATION Package Lead (Pb)free SnPb G D S NChannel
NJW4841-T1. 1-channel Switching Gate Driver
NJW8-T -channel Switching Gate Driver GENERAL DESCRIPTION The NJW8 is a High Speed Switching Gate Driver that is applicable A peak current. The NJW8 features are Withstand voltage of, recommended operating
MC14001B Series. B Suffix Series CMOS Gates MC14001B, MC14011B, MC14023B, MC14025B, MC14071B, MC14073B, MC14081B, MC14082B
MC4B Series BSuffix Series CMOS Gates MC4B, MC4B, MC4B, MC4B, MC4B, MC4B, MC4B, MC4B The B Series logic gates are constructed with P and N channel enhancement mode devices in a single monolithic structure
HIGH SPEED-10 MBit/s LOGIC GATE OPTOCOUPLERS
DESCRIPTION The, /6 single-channel and /6 dual-channel optocouplers consist of a 5 nm AlGaAS LED, optically coupled to a very high speed integrated photodetector logic gate with a strobable output. This
MC10SX1190. Fibre Channel Coaxial Cable Driver and Loop Resiliency Circuit
Fibre Channel Coaxial Cable Driver and Loop Resiliency Circuit Description The MC10SX1190 is a differential receiver, differential transmitter specifically designed to drive coaxial cables. It incorporates
5 V, 1 A H-Bridge Motor Driver
, A H-Bridge Motor Driver DESCRIPTION The SIP200 is an integrated, buffered H-bridge with TTL and CMOS compatible inputs with the capability of delivering up to A continuous current at DD supply. The SIP200
74AC139 74ACT139 Dual 1-of-4 Decoder/Demultiplexer
Dual 1-of-4 Decoder/Demultiplexer General Description The AC/ACT139 is a high-speed, dual 1-of-4 decoder/ demultiplexer. The device has two independent decoders, each accepting two inputs and providing
CAT4109, CAV4109. 3-Channel Constant-Current RGB LED Driver with Individual PWM Dimming
3-Channel Constant-Current RGB LED Driver with Individual PWM Dimming Description The CAT419/CAV419 is a 3 channel constant current LED driver, requiring no inductor. LED channel currents up to 175 ma
DM74121 One-Shot with Clear and Complementary Outputs
June 1989 Revised July 2001 DM74121 One-Shot with Clear and Complementary Outputs General Description The DM74121 is a monostable multivibrator featuring both positive and negative edge triggering with
1 TO 4 CLOCK BUFFER ICS551. Description. Features. Block Diagram DATASHEET
DATASHEET 1 TO 4 CLOCK BUFFER ICS551 Description The ICS551 is a low cost, high-speed single input to four output clock buffer. Part of IDT s ClockBlocks TM family, this is our lowest cost, small clock
AP1509. 150KHz, 2A PWM BUCK DC/DC CONVERTER. Description. Pin Assignments V IN. Applications. Features. (Top View) GND GND. Output AP1509 GND GND
Description Pin Assignments The series are monolithic IC designed for a stepdown DC/DC converter, and own the ability of driving a 2A load without additional transistor. It saves board space. The external
High-Speed, 5 V, 0.1 F CMOS RS-232 Drivers/Receivers ADM222/ADM232A/ADM242
a FEATURES 200 kb/s Transmission Rate Small (0. F) Charge Pump Capacitors Single V Power Supply Meets All EIA-232-E and V.2 Specifications Two Drivers and Two Receivers On-Board DC-DC Converters V Output
TYPICAL APPLICATION CIRCUIT. ORDER INFORMATION SOP-EP 8 pin A703EFT (Lead Free) A703EGT (Green)
www.addmtek.com 2 CHANNELS 150mA HIGH VOLTAGE ADJUSTABLE CURRENT REGULATOR DESCRIPTION A703 is a high voltage, adjustable constant current driver for LED applications. Two regulated current ports are designed
Power MOSFET FEATURES. IRF610PbF SiHF610-E3 IRF610 SiHF610. PARAMETER SYMBOL LIMIT UNIT Drain-Source Voltage V DS 200 V Gate-Source Voltage V GS ± 20
Power MOSFET PRODUCT SUMMARY (V) 00 R DS(on) ( ) = 1.5 Q g (Max.) (nc) 8. Q gs (nc) 1.8 Q gd (nc) 4.5 Configuration Single FEATURES Dynamic dv/dt Rating Repetitive Avalanche Rated Fast Switching Ease of
µpfc ONE CYCLE CONTROL PFC IC
Features PFC with IR proprietary One Cycle Control Continuous conduction mode (CCM) boost type PFC No line voltage sense required Programmable switching frequency (50kHz-200kHz) Programmable output overvoltage
AUIRFR8405 AUIRFU8405
Features Advanced Process Technology New Ultra Low On-Resistance 75 C Operating Temperature Fast Switching Repetitive Avalanche Allowed up to Tjmax Lead-Free, RoHS Compliant Automotive Qualified * AUTOMOTIVE
Power MOSFET FEATURES. IRF740PbF SiHF740-E3 IRF740 SiHF740. PARAMETER SYMBOL LIMIT UNIT Drain-Source Voltage V DS 400 V Gate-Source Voltage V GS ± 20
Power MOSFET PRODUCT SUMMARY (V) 400 R DS(on) (Ω) = 0.55 Q g (Max.) (nc) 63 Q gs (nc) 9.0 Q gd (nc) 3 Configuration Single FEATURES Dynamic dv/dt Rating Repetitive Avalanche Rated Fast Switching Ease of
DM74LS191 Synchronous 4-Bit Up/Down Counter with Mode Control
August 1986 Revised February 1999 DM74LS191 Synchronous 4-Bit Up/Down Counter with Mode Control General Description The DM74LS191 circuit is a synchronous, reversible, up/ down counter. Synchronous operation
28 V, 56 m, Load Switch with Programmable Current Limit and Slew Rate Control
28 V, 56 m, Load Switch with Programmable Current Limit and Slew Rate Control OPERATION DESCRIPTION SiP32419 and SiP32429 are load switches that integrate multiple control features that simplify the design
MM74C74 Dual D-Type Flip-Flop
Dual D-Type Flip-Flop General Description The MM74C74 dual D-type flip-flop is a monolithic complementary MOS (CMOS) integrated circuit cotructed with N- and P-channel enhancement traistors. Each flip-flop
HI-200, HI-201. Features. Dual/Quad SPST, CMOS Analog Switches. Applications. Ordering Information. Functional Diagram FN3121.9
Data Sheet FN3121.9 Dual/Quad SPST, CMOS Analog Switches HI-200/HI-201 (dual/quad) are monolithic devices comprising independently selectable SPST switches which feature fast switching speeds (HI-200 240ns,
AUIPS6031(S)(R) INTELLIGENT POWER HIGH SIDE SWITCH. Features. Product Summary. Rds(on) 60m max. Vclamp 39V I Limit 16A Open load 3V / 0.55A.
Done please find Features September, 12th 2011 Automotive grade AUIPS6031(S)(R) INTELLIGENT POWER HIGH SIDE SWITCH Over temperature shutdown (with auto-restart) Short circuit protection (current limit)
SG2525A SG3525A REGULATING PULSE WIDTH MODULATORS
SG2525A SG3525A REGULATING PULSE WIDTH MODULATORS 8 TO 35 V OPERATION 5.1 V REFERENCE TRIMMED TO ± 1 % 100 Hz TO 500 KHz OSCILLATOR RANGE SEPARATE OSCILLATOR SYNC TERMINAL ADJUSTABLE DEADTIME CONTROL INTERNAL
CD4013BC Dual D-Type Flip-Flop
Dual D-Type Flip-Flop General Description The CD4013B dual D-type flip-flop is a monolithic complementary MOS (CMOS) integrated circuit cotructed with N- and P-channel enhancement mode traistors. Each
Description. For Fairchild s definition of Eco Status, please visit: http://www.fairchildsemi.com/company/green/rohs_green.html.
FSA2357 Low R ON 3:1 Analog Switch Features 10µA Maximum I CCT Current Over an Expanded Control Voltage Range: V IN=2.6V, V CC=4.5V On Capacitance (C ON): 70pF Typical 0.55Ω Typical On Resistance (R ON)
MC74AC138, MC74ACT138. 1-of-8 Decoder/Demultiplexer
-of-8 Decoder/Demultiplexer The MC74AC38/74ACT38 is a high speed of 8 decoder/demultiplexer. This device is ideally suited for high speed bipolar memory chip select address decoding. The multiple input
28V, 2A Buck Constant Current Switching Regulator for White LED
28V, 2A Buck Constant Current Switching Regulator for White LED FP7102 General Description The FP7102 is a PWM control buck converter designed to provide a simple, high efficiency solution for driving
